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Artificial dielectric polarizing-beamsplitter and isolator for the terahertz region

机译:太赫兹区域的人造介电偏振分束器和隔离器

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摘要

We demonstrate a simple and effective strategy for implementing a polarizing beamsplitter for the terahertz spectral region, based on an artificial dielectric medium that is scalable to a range of desired frequencies. The artificial dielectric medium consists of a uniformly spaced stack of metal plates, which is electromagnetically equivalent to a stacked array of parallel-plate waveguides. The operation of the device relies on both the lowest-order, transverse-electric and transverse-magnetic modes of the parallel-plate waveguide. This is in contrast to previous work that relied solely on the transverse-electric mode. The fabricated polarizing beamsplitter exhibits extinction ratios as high as 42 dB along with insertion losses as low as 0.18 dB. Building on the same idea, we also demonstrate an isolator with non-reciprocal transmission, providing high isolation and low insertion loss at a select design frequency. The performance of our isolator far exceeds that of other experimentally demonstrated terahertz isolators, and indeed, even rivals that of commercially available isolators for optical wavelengths. Because these waveguide-based artificial dielectrics are low loss, inexpensive, and easy to fabricate, this approach offers a promising new route for polarization control of free-space terahertz beams.
机译:我们展示了一种简单有效的策略,可基于可扩展至所需频率范围的人工介电介质,为太赫兹光谱区实现偏振分束器。人造介电介质由均匀间隔的金属板叠层组成,这些叠层在电磁上等效于平行板波导的叠层阵列。该装置的操作依赖于平行板波导的最低阶,横向电和横向磁模式。这与仅依赖于横向电模式的先前工作相反。制成的偏振分束器的消光比高达42 dB,插入损耗低至0.18 dB。基于相同的想法,我们还演示了一种具有不可逆传输的隔离器,该隔离器在选定的设计频率下具有高隔离度和低插入损耗。我们的隔离器的性能远远超过其他实验证明的太赫兹隔离器,甚至可以与市售隔离器在光波长方面媲美。由于这些基于波导的人造电介质损耗低,价格便宜且易于制造,因此该方法为自由空间太赫兹光束的偏振控制提供了一种有希望的新途径。

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